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Parallelized modelling and solution scheme for hierarchically scaled simulationsThis two-part paper presents the results of a benchmarked analytical-numerical investigation into the operational characteristics of a unified parallel processing strategy for implicit fluid mechanics formulations. This hierarchical poly tree (HPT) strategy is based on multilevel substructural decomposition. The Tree morphology is chosen to minimize memory, communications and computational effort. The methodology is general enough to apply to existing finite difference (FD), finite element (FEM), finite volume (FV) or spectral element (SE) based computer programs without an extensive rewrite of code. In addition to finding large reductions in memory, communications, and computational effort associated with a parallel computing environment, substantial reductions are generated in the sequential mode of application. Such improvements grow with increasing problem size. Along with a theoretical development of general 2-D and 3-D HPT, several techniques for expanding the problem size that the current generation of computers are capable of solving, are presented and discussed. Among these techniques are several interpolative reduction methods. It was found that by combining several of these techniques that a relatively small interpolative reduction resulted in substantial performance gains. Several other unique features/benefits are discussed in this paper. Along with Part 1's theoretical development, Part 2 presents a numerical approach to the HPT along with four prototype CFD applications. These demonstrate the potential of the HPT strategy.
Document ID
19960009099
Acquisition Source
Legacy CDMS
Document Type
Contractor Report (CR)
Authors
Padovan, Joe
(Akron Univ. Akron, OH, United States)
Date Acquired
September 6, 2013
Publication Date
December 12, 1995
Subject Category
Computer Systems
Report/Patent Number
NIPS-95-06566
NAS 1.26:199942
NASA-CR-199942
Report Number: NIPS-95-06566
Report Number: NAS 1.26:199942
Report Number: NASA-CR-199942
Accession Number
96N16265
Funding Number(s)
CONTRACT_GRANT: NAG3-1142
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.
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